CVE-2026-27794: LangGraph: BaseCache Deserialization of Untrusted Data may lead to Remote Code Execution
Context
A Remote Code Execution vulnerability exists in LangGraph's caching layer when applications enable cache backends that inherit from BaseCache and opt nodes into caching via CachePolicy. Prior to langgraph-checkpoint 4.0.0, BaseCache defaults to JsonPlusSerializer(picklefallback=True). When msgpack serialization fails, cached values can be deserialized via pickle.loads(...).
Who is affected?
Caching is not enabled by default. Applications are affected only when:
- The application explicitly enables a cache backend (for example by passing cache=... to StateGraph.compile(...) or otherwise configuring a BaseCache implementation) - One or more nodes opt into caching via CachePolicy - The attacker can write to the cache backend (for example a network-accessible Redis instance with weak/no auth, shared cache infrastructure reachable by other tenants/services, or a writable SQLite cache file)
Example (enabling a cache backend and opting a node into caching):
py from langgraph.cache.memory import InMemoryCache from langgraph.graph import StateGraph from langgraph.types import CachePolicy
def mynode(state: dict) -> dict: return {"value": state.get("value", 0) + 1}
builder = StateGraph(dict) builder.addnode("mynode", mynode, cachepolicy=CachePolicy(ttl=120)) builder.setentrypoint("mynode")
graph = builder.compile(cache=InMemoryCache())
result = graph.invoke({"value": 1})
With picklefallback=True, when msgpack serialization fails, JsonPlusSerializer can fall back to storing values as a ("pickle", <bytes>) tuple and later deserialize them via pickle.loads(...). If an attacker can place a malicious pickle payload into the cache backend such that the LangGraph process reads and deserializes it, this can lead to arbitrary code execution.
Exploitation requires attacker write access to the cache backend. The serializer is not exposed as a network-facing API.
This is fixed in langgraph-checkpoint>=4.0.0 by disabling pickle fallback by default (picklefallback=False).
Impact
Arbitrary code execution in the LangGraph process when attacker-controlled cache entries are deserialized.
Root Cause
- BaseCache default serializer configuration inherited by cache implementations (InMemoryCache, RedisCache, SqliteCache): - libs/checkpoint/langgraph/cache/base/init.py (pre-fix default: JsonPlusSerializer(picklefallback=True))
- JsonPlusSerializer deserialization sink: - libs/checkpoint/langgraph/checkpoint/serde/jsonplus.py - loadstyped(...) calls pickle.loads(data) when type == "pickle" and pickle fallback is enabled
Attack preconditions
An attacker must be able to write attacker-controlled bytes into the cache backend such that the LangGraph process later reads and deserializes them.
This typically requires write access to a networked cache (for example a network-accessible Redis instance with weak/no auth or shared cache infrastructure reachable by other tenants/services) or write access to local cache storage (for example a writable SQLite cache file via permissive file permissions or a shared writable volume).
Because exploitation requires write access to the cache storage layer, this is a post-compromise / post-access escalation vector.
Remediation
- Upgrade to langgraph-checkpoint>=4.0.0.
Resources
- ZDI-CAN-28385 - Patch: https://github.com/langchain-ai/langgraph/pull/6677 - Patch diff: https://patch-diff.githubusercontent.com/raw/langchain-ai/langgraph/pull/6677.patch - Credit: Peter Girnus (@gothburz), Demeng Chen, and Brandon Niemczyk (Trend Micro Zero Day Initiative)
Other sources
LangGraph Checkpoint defines the base interface for LangGraph checkpointers. Prior to version 4.0.0, a Remote Code Execution vulnerability exists in LangGraph's caching layer when applications enable cache backends that inherit from BaseCache and opt nodes into caching via CachePolicy. Prior to langgraph-checkpoint 4.0.0, BaseCache defaults to JsonPlusSerializer(picklefallback=True). When msgpack serialization fails, cached values can be deserialized via pickle.loads(...). Caching is not enabled by default. Applications are affected only when the application explicitly enables a cache backend (for example by passing cache=... to StateGraph.compile(...) or otherwise configuring a BaseCache implementation), one or more nodes opt into caching via CachePolicy, and the attacker can write to the cache backend (for example a network-accessible Redis instance with weak/no auth, shared cache infrastructure reachable by other tenants/services, or a writable SQLite cache file). An attacker must be able to write attacker-controlled bytes into the cache backend such that the LangGraph process later reads and deserializes them. This typically requires write access to a networked cache (for example a network-accessible Redis instance with weak/no auth or shared cache infrastructure reachable by other tenants/services) or write access to local cache storage (for example a writable SQLite cache file via permissive file permissions or a shared writable volume). Because exploitation requires write access to the cache storage layer, this is a post-compromise / post-access escalation vector. LangGraph Checkpoint 4.0.0 patches the issue.
— NVD
Affected Software
Remediation
Recommended actions to resolve this vulnerability, in priority order.
- Upgrade
Upgrade
pip/langgraph-checkpointto a version that resolves this vulnerability.Fixed in 4.0.0 - Upgrade
Upgrade
langgraph-checkpointto a version that resolves this vulnerability.Fixed in 4.0.0
Event History
Frequently Asked Questions
What is the severity of CVE-2026-27794?
CVE-2026-27794 is classified as a Remote Code Execution vulnerability, which can have severe impacts on affected systems.
How do I fix CVE-2026-27794?
To fix CVE-2026-27794, upgrade to langgraph-checkpoint version 4.0.0 or later.
What software is affected by CVE-2026-27794?
CVE-2026-27794 affects langgraph-checkpoint versions prior to 4.0.0.
What are the potential impacts of CVE-2026-27794?
The potential impacts of CVE-2026-27794 include unauthorized remote code execution on vulnerable systems.
How does CVE-2026-27794 occur?
CVE-2026-27794 occurs through deserialization of untrusted data in the caching layer of LangGraph when certain cache options are enabled.